Inelastic_red_CUP_II.PNGinelastic_blue_CUP.PNGinelastic_blue_CUP_II.PNGinelasti_red_CUP.PNGelastic_red_CUP.PNGelastic_red_CUP_II.PNGelastic_blue_CUP.PNGelastic_blue_CUP_II.PNG

Elastic I
Before (kg-m/s)
After (kg-m/s)
.3174
.3097
Momentum conserved: 98%
Before (J)
After (J)
.136556
.11232
KE conserved: 82%


Inelastic I
Before (kg-m/s)
After (kg-m/s)
.24235
.23014
Momentum conserved: 95%
Before (J)
After (J)
.07784
.06266
KE conserved: 81%


Elastic II
Before (kg-m/s)
After (kg-m/s)
.397901
.36031
Momentum conserved: 91%
Before (J)
After (J)
.124387
.094778
KE conserved: 76%


Inelastic II
Before (kg-m/s)
After (kg-m/s)
.548506
.491848
Momentum conserved: 90%
Before (J)
After (J)
.138206
.079753
KE conserved: 58%

In conclusion, some of the data may have been wrong however, the law of conservation of Kinectic Energy and Momentum prooved to be true.